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公开(公告)号:US20030035955A1
公开(公告)日:2003-02-20
申请号:US10143995
申请日:2002-05-10
Inventor: Tapesh Yadav
IPC: B32B005/16 , B29C059/00
CPC classification number: B82Y30/00 , B29B9/08 , B29B9/12 , B29B2009/125 , B82Y25/00 , C01P2002/02 , C01P2002/60 , C01P2004/54 , C01P2004/62 , C01P2006/12 , C08K2201/011 , C08K2201/013 , Y10T428/25 , Y10T428/252 , Y10T428/256 , Y10T428/257 , Y10T428/258 , Y10T428/259 , Y10T428/29 , Y10T428/2982 , Y10T428/2991 , Y10T428/2993 , Y10T428/2998
Abstract: Size-confined nanocomposite powders and methods for their manufacture are provided by coating fine powders with a nanoscale powder of a different composition. The nanocomposite plastics disclosed offer performance characteristics approaching those of metals and alloys. The nanocomposite powders are alternatively used for dispersion strengthening of metals, alloys, and ceramics. Novel materials based nanotechnology for energy devices and programmable drug delivery are disclosed.
Abstract translation: 尺寸约束的纳米复合粉末及其制造方法通过用不同组成的纳米级粉末涂覆细粉而提供。 所公开的纳米复合材料提供接近金属和合金的性能特性。 纳米复合粉末可替代地用于金属,合金和陶瓷的分散强化。 公开了用于能量装置和可编程药物递送的新型材料基纳米技术。
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公开(公告)号:US20020042456A1
公开(公告)日:2002-04-11
申请号:US09891899
申请日:2001-06-26
Inventor: Hideki Kobayashi , Masayuki Hayashi
IPC: C08K009/02 , C08K005/04
CPC classification number: C08L83/04 , C08G77/04 , C08K3/01 , C08K3/26 , C08K2201/013 , Y10T428/2984 , Y10T428/2985 , Y10T428/2987 , Y10T428/2991 , C08L2666/02 , C08L2666/54 , C08L2666/34
Abstract: A vibration damping silicone composition with excellent long term storage stability and vibration damping ability contains as components (A) a silicone oil, (B) hollow particles of an organic resin having an inorganic material powder supported on its surfaces, and (C) a solid inorganic material powder.
Abstract translation: 具有优异的长期储存稳定性和减震能力的减震硅酮组合物包含作为组分(A)的硅油,(B)具有负载在其表面上的无机材料粉末的有机树脂的中空颗粒,(C)固体 无机材料粉末。
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103.
公开(公告)号:US5939471A
公开(公告)日:1999-08-17
申请号:US945169
申请日:1997-10-23
Applicant: Hiroyuki Watanabe , Hitoshi Ige , Akira Yanagase
Inventor: Hiroyuki Watanabe , Hitoshi Ige , Akira Yanagase
CPC classification number: C08J3/215 , B29B9/16 , C08K3/36 , B29K2105/16 , C08K2201/013
Abstract: A composite material having a structure in which negatively charged colloidal silica having an average particle diameter of not greater than 50 nm and remaining substantially in the form of primary particles is attached to the outer surfaces of negatively charged polymer particles. By using this composite material, there can be obtained molded articles wherein colloidal silica is dispersed in a resin while remaining substantially in the form of primary particles.
Abstract translation: PCT No.PCT / JP96 / 01127 Sec。 371日期:1997年10月23日 102(e)1997年10月23日PCT 1996年4月25日PCT PCT。 出版物WO96 / 34036 日期:1996年10月31日具有平均粒径不大于50nm并保持为初级粒子形式的带负电荷的胶体二氧化硅的结构的复合材料附着到带负电荷的聚合物颗粒的外表面上。 通过使用该复合材料,可以获得其中胶体二氧化硅分散在树脂中而基本上保持为初级颗粒形式的模塑制品。
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公开(公告)号:US20240336747A1
公开(公告)日:2024-10-10
申请号:US18690069
申请日:2023-04-24
Applicant: SABIC Global Technologies B.V.
Inventor: Tayirjan Taylor Isimjan , Maher N. Aloufi , David West , Toseef Ahmed
CPC classification number: C08J3/203 , A01N25/10 , A01N59/16 , C08K3/28 , C08J2323/06 , C08K2201/013
Abstract: Disclosed is a method of preparing a polymer composite component, wherein the method comprises uniformly dispersing glycerol and metal ions on a polymer powder to create a polymer composite powder, extruding the polymer composite powder at a temperature of at least 80° C., thereby converting a portion of the metal ions to metal atoms, and then forming the component from the extruded polymer composite. The component can be a thin film, to be applies to surfaces to increase antimicrobial properties.
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105.
公开(公告)号:US12103237B2
公开(公告)日:2024-10-01
申请号:US18155833
申请日:2023-01-18
Applicant: XEROX CORPORATION
Inventor: Nan Xing Hu , Yulin Wang
IPC: B29C64/393 , B22F10/00 , B29C64/118 , B33Y50/02 , B33Y70/00
CPC classification number: B29C64/393 , B22F10/00 , B29C64/118 , B33Y50/02 , B33Y70/00 , C08K2201/013 , C08L2205/00
Abstract: A particle and a method for producing the same is disclosed. For example, the particle includes a polymer resin that is compatible with a three-dimensional (3D) printing process to print a three-dimensional (3D) object and a marking additive that allows selective portions of the 3D object to change color when exposed to a light, wherein the marking additive is added to approximately 0.01 to 25.00 weight percent (wt %).
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公开(公告)号:US20240199846A1
公开(公告)日:2024-06-20
申请号:US18285228
申请日:2022-10-27
Applicant: LG CHEM, LTD.
Inventor: Hyun Kyu KIM , Joo Ho KIM , Eun Suk KIM , Jeong Ju MOON , Seok Ho JEONG
IPC: C08K5/11 , C08K5/00 , C08L101/00
CPC classification number: C08K5/11 , C08K5/0016 , C08L101/00 , C08K2201/013
Abstract: The present invention is characterized by aconitate wherein an alkyl group is derived from an isomer mixture of hexyl alcohol, and when the propane tricarboxylate is applied to a resin, excellent migration resistance, volatile loss, and stress resistance as well as high plasticization efficiency may be obtained.
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107.
公开(公告)号:US20240174820A1
公开(公告)日:2024-05-30
申请号:US17793945
申请日:2021-06-04
Applicant: BENGBU ESTONE POLYMER COMPOSITES CO.,LTD.
Inventor: Shaohui WANG , Xuebing GONG , Yongfa QIN , Xuexin JIANG
CPC classification number: C08J3/128 , C08K3/28 , C08K5/54 , C08K9/02 , C08K9/06 , C08L27/18 , C08L63/00 , C08J2327/18 , C08K2201/005 , C08K2201/013 , C08L2205/22
Abstract: A PTFE composite powder, a preparation method thereof, and a composite material containing the same are provided. The PTFE composite powder includes the following components: a PTFE powder, an inorganic powder, and a surface treatment agent. The inorganic powder is coated on a surface of the PTFE powder to form an inorganic powder layer, and the surface treatment agent is coated on the inorganic powder layer. For the composite material obtained by the present invention, the compatibility between the PTFE composite powder and matrix polymer is better than that of the prior art, leading to larger addition amount, and smaller dielectric constant and dielectric loss of the composite material, thus suitable for being used as 5G materials.
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公开(公告)号:US20240059862A1
公开(公告)日:2024-02-22
申请号:US18370032
申请日:2023-09-19
Applicant: Corning Research & Development Corporation
Inventor: Linda Sue Baker , Natalya Vyacheslavovna Zaytseva
CPC classification number: C08K3/34 , C08K3/22 , C08K7/26 , C08K9/04 , C08K2201/002 , C08K2003/2227 , C08K2201/013
Abstract: Embodiments of the disclosure relate to a polymer composition that includes at least one polymer and an aversive additive dispersed in the at least one polymer. The aversive additive is made of a zeolite material and an aversive material infused within pores of the zeolite material. In embodiments, the aversive additive is incorporated into an optical fiber cable. The optical fiber cable includes at least one optical fiber and a polymeric jacket that surrounds the at least one optical fiber. The polymeric jacket is made of a polymer matrix and the aversive additive is dispersed in the polymer matrix. Embodiments of a method of infusing an aversive material into a zeolite material to form the aversive additive are also disclosed herein.
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公开(公告)号:US11820664B2
公开(公告)日:2023-11-21
申请号:US17444327
申请日:2021-08-03
Applicant: Schlumberger Technology Corporation
Inventor: Manuel Marya , Alireza Zolfaghari , Srinand Sreedharan Karuppoor
IPC: C08L101/12 , C01B32/184 , B23K26/00 , C08K7/00 , C08K3/04 , C08J5/00 , B29C64/188 , B33Y70/10 , B23K103/16 , B82Y30/00 , B82Y40/00 , B33Y10/00
CPC classification number: C01B32/184 , B23K26/0006 , B29C64/188 , C08J5/005 , C08K3/042 , C08K7/00 , C08L101/12 , B23K2103/16 , B33Y10/00 , B33Y70/10 , B82Y30/00 , B82Y40/00 , C01P2004/24 , C01P2004/64 , C08J2300/22 , C08K2201/011 , C08K2201/013 , C08L2207/04 , C08L2666/55 , C08L2666/72
Abstract: A fluid system component can include a body that includes a multidimensional shape defined in orthogonal directions and layers stacked along one of the orthogonal directions, where at least one of the layers includes polymeric material and graphene nanoplatelets formed in situ from the polymeric material, and where the graphene nanoplatelets increase stiffness of the polymeric material.
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公开(公告)号:US20190211171A1
公开(公告)日:2019-07-11
申请号:US16093415
申请日:2017-06-01
Applicant: Dow Global Technologies LLC , Rohm and Haas Company
Inventor: Kaoru Aou , Yibei Gu , Rajat Duggal , Yasmin N. Srivastava , Joseph Jacobs , Qinghao Meng , Gregoire Cardoen , Ralph C. Even , Morgan A. Springs
CPC classification number: C08J9/0009 , C08G18/0866 , C08G18/163 , C08G18/18 , C08G18/1833 , C08G18/2081 , C08G18/24 , C08G18/244 , C08G18/4816 , C08G18/4829 , C08G18/4837 , C08G18/4841 , C08G18/7664 , C08G2101/0008 , C08G2101/005 , C08G2101/0058 , C08G2101/0083 , C08G2350/00 , C08J9/365 , C08J2375/04 , C08K3/36 , C08K9/10 , C08K2201/013 , C08L83/04 , C09D133/02 , C08L75/08 , C08L33/02
Abstract: A coated viscoelastic polyurethane foam includes a viscoelastic polyurethane foam having the coating thereon, the viscoelastic polyurethane foam having a resiliency of less than or equal to 20% as measured according to ASTM D3574, and a coating material on and embedded within the viscoelastic polyurethane foam, the coating material including an aqueous polymer emulsion and an encapsulated phase change material.
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